In Problems 18, solve each pure-time differential equation. dy dx = x + sin x, where y0 = 0 for x0 = 0
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Textbook Solutions for Calculus For Biology and Medicine (Calculus for Life Sciences Series)
Question
Consider the following differential equation, which is important in population genetics: a(x)g(x) 1 2 d dx [b(x)g(x)] = 0 Here, b(x) > 0. (a) Define y = b(x)g(x), and show that y satisfies a(x) b(x) y 1 2 dy dx = 0 (8.50) (b) Separate variables in (8.50), and show that if y > 0, then y = C exp _ 2 % a(x) b(x) dx _
Solution
The first step in solving 8.1 problem number 54 trying to solve the problem we have to refer to the textbook question: Consider the following differential equation, which is important in population genetics: a(x)g(x) 1 2 d dx [b(x)g(x)] = 0 Here, b(x) > 0. (a) Define y = b(x)g(x), and show that y satisfies a(x) b(x) y 1 2 dy dx = 0 (8.50) (b) Separate variables in (8.50), and show that if y > 0, then y = C exp _ 2 % a(x) b(x) dx _
From the textbook chapter Solving Differential Equations you will find a few key concepts needed to solve this.
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